Add support for halfword memory accesses.
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parent
fd9eef821e
commit
9434299613
67
src/adiv5.c
67
src/adiv5.c
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@ -46,6 +46,8 @@ static int ap_check_error(struct target_s *target);
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static int ap_mem_read_words(struct target_s *target, uint32_t *dest, uint32_t src, int len);
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static int ap_mem_write_words(struct target_s *target, uint32_t dest, const uint32_t *src, int len);
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static int ap_mem_read_halfwords(struct target_s *target, uint16_t *dest, uint32_t src, int len);
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static int ap_mem_write_halfwords(struct target_s *target, uint32_t dest, const uint16_t *src, int len);
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static int ap_mem_read_bytes(struct target_s *target, uint8_t *dest, uint32_t src, int len);
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static int ap_mem_write_bytes(struct target_s *target, uint32_t dest, const uint8_t *src, int len);
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@ -152,6 +154,8 @@ void adiv5_dp_init(ADIv5_DP_t *dp)
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t->mem_read_words = ap_mem_read_words;
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t->mem_write_words = ap_mem_write_words;
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t->mem_read_halfwords = ap_mem_read_halfwords;
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t->mem_write_halfwords = ap_mem_write_halfwords;
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t->mem_read_bytes = ap_mem_read_bytes;
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t->mem_write_bytes = ap_mem_write_bytes;
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@ -219,6 +223,42 @@ ap_mem_read_words(struct target_s *target, uint32_t *dest, uint32_t src, int len
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return 0;
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}
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static int
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ap_mem_read_halfwords(struct target_s *target, uint16_t *dest, uint32_t src, int len)
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{
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ADIv5_AP_t *ap = adiv5_target_ap(target);
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uint32_t tmp;
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uint32_t osrc = src;
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len >>= 1;
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adiv5_ap_write(ap, ADIV5_AP_CSW, ap->csw |
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ADIV5_AP_CSW_SIZE_HALFWORD | ADIV5_AP_CSW_ADDRINC_SINGLE);
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adiv5_dp_low_access(ap->dp, ADIV5_LOW_AP, ADIV5_LOW_WRITE,
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ADIV5_AP_TAR, src);
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adiv5_dp_low_access(ap->dp, ADIV5_LOW_AP, ADIV5_LOW_READ,
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ADIV5_AP_DRW, 0);
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while(--len) {
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tmp = adiv5_dp_low_access(ap->dp, ADIV5_LOW_AP, ADIV5_LOW_READ,
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ADIV5_AP_DRW, 0);
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*dest++ = (tmp >> ((src & 0x2) << 3) & 0xFFFF);
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src += 2;
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/* Check for 10 bit address overflow */
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if ((src ^ osrc) & 0xfffffc00) {
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osrc = src;
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adiv5_dp_low_access(ap->dp, ADIV5_LOW_AP,
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ADIV5_LOW_WRITE, ADIV5_AP_TAR, src);
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adiv5_dp_low_access(ap->dp, ADIV5_LOW_AP,
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ADIV5_LOW_READ, ADIV5_AP_DRW, 0);
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}
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}
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tmp = adiv5_dp_low_access(ap->dp, 0, 1, ADIV5_DP_RDBUFF, 0);
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*dest++ = (tmp >> ((src & 0x2) << 3) & 0xFFFF);
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return 0;
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}
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static int
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ap_mem_read_bytes(struct target_s *target, uint8_t *dest, uint32_t src, int len)
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{
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@ -280,6 +320,33 @@ ap_mem_write_words(struct target_s *target, uint32_t dest, const uint32_t *src,
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return 0;
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}
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static int
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ap_mem_write_halfwords(struct target_s *target, uint32_t dest, const uint16_t *src, int len)
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{
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ADIv5_AP_t *ap = adiv5_target_ap(target);
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uint32_t odest = dest;
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len >>= 1;
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adiv5_ap_write(ap, ADIV5_AP_CSW, ap->csw |
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ADIV5_AP_CSW_SIZE_HALFWORD | ADIV5_AP_CSW_ADDRINC_SINGLE);
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adiv5_dp_low_access(ap->dp, ADIV5_LOW_AP, ADIV5_LOW_WRITE,
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ADIV5_AP_TAR, dest);
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while(len--) {
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uint32_t tmp = (uint32_t)*src++ << ((dest & 2) << 3);
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adiv5_dp_low_access(ap->dp, ADIV5_LOW_AP, ADIV5_LOW_WRITE,
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ADIV5_AP_DRW, tmp);
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dest += 2;
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/* Check for 10 bit address overflow */
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if ((dest ^ odest) & 0xfffffc00) {
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odest = dest;
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adiv5_dp_low_access(ap->dp, ADIV5_LOW_AP,
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ADIV5_LOW_WRITE, ADIV5_AP_TAR, dest);
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}
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}
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return 0;
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}
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static int
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ap_mem_write_bytes(struct target_s *target, uint32_t dest, const uint8_t *src, int len)
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{
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@ -129,6 +129,8 @@ void arm7tdmi_jtag_handler(jtag_dev_t *dev)
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t->check_error = (void *)do_nothing;
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t->mem_read_words = (void *)do_nothing;
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t->mem_write_words = (void *)do_nothing;
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t->mem_read_halfwords = (void *)do_nothing;
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t->mem_write_halfwords = (void *)do_nothing;
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t->mem_read_bytes = (void *)do_nothing;
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t->mem_write_bytes = (void *)do_nothing;
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t->regs_size = 16 * sizeof(uint32_t);
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@ -101,6 +101,8 @@ gdb_main(void)
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uint8_t mem[len];
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if(((addr & 3) == 0) && ((len & 3) == 0))
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target_mem_read_words(cur_target, (void*)mem, addr, len);
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else if(((addr & 1) == 0) && ((len & 1) == 0))
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target_mem_read_halfwords(cur_target, (void*)mem, addr, len);
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else
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target_mem_read_bytes(cur_target, (void*)mem, addr, len);
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if(target_check_error(cur_target))
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@ -127,6 +129,8 @@ gdb_main(void)
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unhexify(mem, pbuf + hex, len);
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if(((addr & 3) == 0) && ((len & 3) == 0))
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target_mem_write_words(cur_target, addr, (void*)mem, len);
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else if(((addr & 1) == 0) && ((len & 1) == 0))
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target_mem_write_halfwords(cur_target, addr, (void*)mem, len);
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else
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target_mem_write_bytes(cur_target, addr, (void*)mem, len);
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if(target_check_error(cur_target))
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@ -56,6 +56,12 @@ target *target_attach(target *t, target_destroy_callback destroy_cb);
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#define target_mem_write_words(target, dest, src, len) \
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(target)->mem_write_words((target), (dest), (src), (len))
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#define target_mem_read_halfwords(target, dest, src, len) \
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(target)->mem_read_halfwords((target), (dest), (src), (len))
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#define target_mem_write_halfwords(target, dest, src, len) \
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(target)->mem_write_halfwords((target), (dest), (src), (len))
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#define target_mem_read_bytes(target, dest, src, len) \
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(target)->mem_read_bytes((target), (dest), (src), (len))
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@ -136,6 +142,11 @@ struct target_s {
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int (*mem_write_words)(struct target_s *target, uint32_t dest,
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const uint32_t *src, int len);
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int (*mem_read_halfwords)(struct target_s *target, uint16_t *dest, uint32_t src,
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int len);
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int (*mem_write_halfwords)(struct target_s *target, uint32_t dest,
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const uint16_t *src, int len);
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int (*mem_read_bytes)(struct target_s *target, uint8_t *dest, uint32_t src,
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int len);
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int (*mem_write_bytes)(struct target_s *target, uint32_t dest,
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